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首页> 外文期刊>Spectrochimica acta, Part A. Molecular and biomolecular spectroscopy >Design and synthesis of a novel lanthanide fluorescent probe (Tb III-dtpa-bis(2,6-diaminopurine)) and its application to the detection of uric acid in urine sample
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Design and synthesis of a novel lanthanide fluorescent probe (Tb III-dtpa-bis(2,6-diaminopurine)) and its application to the detection of uric acid in urine sample

机译:新型镧系元素荧光探针的设计和合成(TB III -DTPA-BIS(2,6-二氨基嘌呤))及其在检测尿酸中的应用 尿样

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摘要

In this study, a novel fluorescent probe, TbIII-dtpa-bis(2,6-diaminopurine) (Tb-dtpa-bdap), is designed based on the principle of complementary base pairing and synthesized for uric acid detection. The synthesized fluorescent probe is characterized by1H NMR,13C NMR, infra-red (IR) spectrum and ultraviolet-visible (UV–vis) spectra. It is found that the fluorescence of Tb-dtpa-bdap solution can be quenched obviously in the presence of uric acid. The affecting factors, including solution acidity, uric acid concentration and interfering substances, on the detection of uric acid using this probe are examined. Under optimized conditions, the fluorescence intensities of Tb-dtpa-bdap solution towards different uric acid concentrations show a linear response in the range from 1.00?×?10?5?mol·L?1to 5.00?×?10?5?mol·L?1with a linear correlation coefficient (R2) of 0.9877. And the obtained limit of detection (LOD) is about 5.80?×?10?6?mol·L?1, which is lower than the level of uric acid in actual urine. The mechanism on the detection of uric acid by using Tb-dtpa-bdap is inferred from the experimental results. The facts demonstrate that the proposed fluorescent probe can be successfully applied for the determination of uric acid in human urine samples.
机译:在该研究中,基于互补碱基配对的原理设计了一种新型荧光探针TBIII-DTPA-BIS(2,6-二氨基嘌呤)(TB-DTPA-BDAP),并为尿酸检测合成。合成的荧光探针表征为1H NMR,13C NMR,红外(IR)光谱和紫外线可见(UV-VIS)光谱。发现在尿酸存在下可以明显淬灭TB-DTPA-BDAP溶液的荧光。研究了在使用该探针检测尿酸的影响因素,包括溶液酸度,尿酸浓度和干扰物质。在优化条件下,朝向不同尿酸浓度的Tb-dtpa-bdap溶液的荧光强度显示在1.00?×10?5?mol·l?1至5.00?×10?5?5? l?1为0.9877的线性相关系数(R2)。并且获得的检测限(LOD)约为5.80?×10?6?mol·L?1,其低于实际尿液中的尿酸水平。通过使用Tb-DTPA-BDAP检测尿酸的机制从实验结果推断出来。事实证明,所提出的荧光探针可以成功地应用于测定人类尿液样品中的尿酸。

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